Device and process for trapping and compressing organisms
View Patent ↗The present disclosure relates to an organism trapping device that includes a vibration wave generator configured to generate frequency ranges from 1.00 to 1.67 Hz (Hertz), an inciting engine communicatively coupled with the vibration wave generator, and configured to generate signals representing vibration parameters based on the generated frequency, a walled container operatively coupled with the inciting engine and adapted to contain fluid and receives the generated signals to simulate flow of blood in human blood vessels based on the vibration parameters to attract number of organisms towards the device, a fumigating agent adapted to compress the number of organisms entering into the device, sensors configured to sense an entry of number of organisms into the device, and a processor communicatively coupled with the sensor and activates the fumigating agent based on the signal received from the sensor. The present disclosure also relates to method of trapping organisms.
1 . An organism trapping device for trapping organisms, the device comprises:
a. a vibration wave generator, that is configured to generate vibration waves having a frequency ranging from 1.00 to 1.67 Hz;
b. an inciting engine, that is communicatively coupled with the vibration wave generator, and configured to generate signals representing one or more vibration parameters based on the frequency of the generated vibration waves;
c. a walled container that is operatively coupled with the inciting engine and adapted to contain fluid and receives the generated signals to simulate flow of blood in human blood vessels based on the one or more vibration parameters to attract one or more organisms towards the device;
d. a fumigating agent that is adapted to compress the one or more organisms entering into the device;
e. sensors, that are configured to sense an entry of the one or more organisms into the device and in response, generate a sensor signal;
f. a processor that is communicatively coupled with the sensors and activates the fumigating agent based on the sensor signal received from the sensors;
g. a sludge extruder configured to expel compressed organisms, wherein the processor is further communicatively coupled with the sludge extruder and configured to periodically activate the sludge extruder to expel the compressed organisms; and
h. a device body, wherein the vibration wave generator, inciting engine, walled container, fumigating agent, sensors, and processor are operatively connected to the device body.
2 . The device of claim 1 , wherein the processor is communicatively coupled to the vibration wave generator and configured to control the vibration wave generator to generate a vibration wave of the vibration waves having a frequency mimicking a human heart.
3 . The device of claim 1 , wherein the device is adjustable in dimension.
4 . The device of claim 1 , wherein the walled container is flexible.
5 . The device of claim 1 , wherein the vibration wave generator further comprises a transducer and a mechanical driver.
6 . The device of claim 1 , wherein the one or more vibration parameters are selected from a group comprising fluid pressure, volume and time intervals.
7 . The device of claim 1 , wherein the walled container is further operatively coupled with one or more tubes.
8 . The device of claim 1 , wherein the vibration wave generator generates a range of frequency similar to human heart rate.
9 . The device of claim 1 , wherein the sensors are proximity sensors or motion sensors.
10 . The device of claim 1 , wherein the fluid is one of gel, semi-flow liquid, water, alcohol, oil, fruit extract, fragrance or organic compounds.
11 . The device of claim 1 , wherein the fluid contains disc like colloidal material to simulate flow in tubes to generate capillary blood flow pattern.
12 . The device of claim 1 , further comprising a solar cell to power the device.
13 . The device of claim 1 , further comprising an inlet for trapping organisms, wherein the inlet is defined through the device body and comprises:
one or more hair like projections that are mounted on a wall of the inlet.
14 . The device of claim 13 , wherein the wall of the inlet comprises a top wall of the inlet, a bottom wall of the inlet, a left wall of the inlet, and a right wall of the inlet, and the one or more hair like projections are mounted on at least one of the top wall of the inlet, the bottom wall of the inlet, the left wall of the inlet, the right wall of the inlet or a combination thereof.
15 . An organism trapping device for trapping organisms, the device comprises:
a. a vibration wave generator, configured to generate vibration waves having a frequency ranging from 1.00 to 1.67 Hz;
b. an inciting engine, communicatively coupled with the vibration wave generator, and configured to generate signals representing vibration parameters based on the frequency of the generated vibration waves;
c. a walled container operatively coupled with the inciting engine and adapted to contain fluid and receive the generated signals to simulate flow of blood to attract one or more organisms towards the device;
d. an inlet defining an entry path into the device, the inlet comprising one or more hair like projections mounted on a combination of a top wall, a bottom wall, a left wall, and a right wall of the inlet, wherein the one or more hair like projections are configured to permit one-way entry of the one or more organisms into the device via the inlet and to trap the one or more organisms inside the device by preventing exit via the inlet;
e. one or more sensors disposed at the inlet, the one or more sensors configured to sense the entry of the one or more organisms into the device;
f. a processor communicatively coupled with the one or more sensors;
g. a fumigating agent communicatively coupled with the processor, wherein the processor is configured to activate the fumigating agent based on a signal received from the one or more sensors to compress the one or more organisms that have entered the device; and
h. a device body, wherein the vibration wave generator, inciting engine, walled container, one or more sensors, processor, and fumigating agent are operatively connected to the device body and the inlet is defined through the device body.